[0001] This invention relates to medical tube assemblies of the kind comprising a medical
tube and an obturator inserted within the tube, the obturator having a patient end
projecting from the patient end of the tube to aid insertion of the assembly.
[0002] Tracheostomy tubes are often inserted with the aid of an obturator having a pointed
end projecting from the patient end of the tracheostomy tube. The tip of the obturator
helps separate tissue, enabling smooth entry of the tube. The obturator also helps
stiffen the tube and prevents ingress of tissue into the tube, which could cause blockage.
Examples of tracheostomy obturators are described in US4246897, US5222487 and GB2224213.
The obturator is pushed into the tracheal tube to its full extent, as limited by a
flange abutting the patient end connector on the tracheal tube. The surgeon has to
grip the machine end of the obturator and the tube in order to hold the obturator
in place and prevent it being pushed rearwardly out of the tube during insertion.
Any displacement of the obturator from its correct position may make insertion of
the tube more difficult and, by reducing the smoothness of the patient end of the
assembly, may cause trauma to tissue around the stoma. After insertion, the obturator
is pulled out of the machine end of the tube. Obturators are also used to help insertion
of other medical tubes.
[0003] It is an object of the present invention to provide an improved medical tube assembly.
[0004] According to the present invention there is provided a medical tube assembly of the
above-specified kind, characterised in that the obturator and tube are provided at
their machine ends with cooperating surface formations arranged, when engaged, to
prevent rearward displacement of the obturator relative to the tube.
[0005] The cooperating surface formations are preferably arranged such that they can be
disengaged by twisting the obturator through a small angle relative to the tube. The
cooperating surface formations may be provided by a resilient catch and a lip. The
obturator preferably has two resilient catches extending along opposite sides of the
tube and engaging respective lips on the tube. The tube may have a coupling at its
patient end, the surface formation on the obturator being provided by at least one
resilient catch that extends along the outside of the connector and engages on a surface
formation on the connector. The obturator may have a strap of rectangular section
extending between its machine end and its patient end. The patient and machine ends
of the obturator both preferably have an air passage therethrough. The obturator may
be moulded from a plastics material. The medical tube may be a tracheostomy tube and
the patient end of the obturator be pointed, the tube and obturator together providing
an air passage extending along the assembly to enable the patient to breath while
the assembly is being inserted.
[0006] A tracheostomy tube assembly according to the present invention, will now be described,
by way of example, with reference to the accompanying drawings, in which:
Figure 1 is a partly cut-away perspective view of the assembly;
Figure 2 is a perspective view of the obturator of the assembly; and
Figure 3 is a cross sectional side elevation of the machine end of the assembly.
[0007] The assembly comprises a tracheostomy tube 1 and an obturator 2.
[0008] The tube 1 has a conventional shaft 10 of circular section, which is curved or bent
to suit the anatomical requirements of the patient. The patient end 11 of the shaft
10 is cut square and rounded to be atraumatic. At its machine end, the shaft 10 is
bonded to a coupling 12 having a female tapered bore 13 shaped to receive a male tapered
coupling (not shown) connected to a patient ventilation or anaesthetic circuit. Alternatively,
where the patient is breathing spontaneously, the coupling 12 is left open. Externally,
the coupling 12 is of cylindrical shape apart from surface formations provided by
two, short undercut lips 14 located diametrically opposite one another at the patient
end of the coupling. The tube 1 also includes a conventional, adjustable flange 15
of the kind described in GB2227941. The flange 15 has a flexible plate 16 to which
two semi-circular arms 17 are attached and hinged with one another. The arms 17 can
be clamped together, to lock the flange 15 at any location along the shaft 10, by
means of a bolt 18 on one arm that engages a threaded aperture 19 on the other arm.
The shaft 10 has an inflatable cuff (not shown) towards its patient end, for sealing
with the inside of the trachea; alternative tubes need not include such a cuff.
[0009] The obturator 2 is moulded from a stiff but bendable, resilient plastics material
and has a strap 20 of generally rectangular shape extending along the major part of
its length, the width of the strap being slightly less than the internal diameter
of the shaft 10 of the tube 1. The strap 20 is bent at right angles, to the same shape
as that of the shaft 10, and has three semicircular projections 21 on its convex side,
in the region of the bend, so that the strap is held substantially centrally within
the tube 1 in the region of the bend. At its patient end 22, the obturator is provided
with a bullet shape nose 23, which is a close fit within the patient end 11 of the
tube 1. The nose 23 has a pointed tip 24, which, in use, projects from the tube 1
so as to form a pointed continuation of the patient end of the shaft 10. A bore 25
extends along the nose 23 from its tip 24 to an opening 26 at its rear end.
[0010] At its machine end 27, the obturator 2 has an enlarged, cruciform section 28 with
a tapered exterior, which is a close friction fit within the coupling 12 of the tube
1. A flange 29 extends radially at the machine end of the cruciform section 28 and
provides a grip by which the obturator 2 can be inserted and removed from the tube
1. Two resilient arms 30 extend forwardly from the flange 29 on opposite sides of
the obturator 2. The arms 30 are terminated at their patient end by surface formations
in the form of inwardly-directed catches 31 formed by an inclined ramp 32 and a ledge
33. The dimensions of the arms 30 are such that, when the flange 29 abuts the machine
end of the coupling 12, the arms extend along opposite sides of the coupling 12 with
the catches 31 engaging under the lips 14, thereby preventing the obturator 2 being
removed from the tube. Two vent holes 34 are formed through the flange 29 in alignment
with the corners between the cruciform section 28.
[0011] In use, the obturator 2 is pushed fully into the tube 1 so that the nose 23 projects
from the patient end 11 of the tube and so that the catches 31 engage the lips 14
on the coupling 12. The flexible nature of the strap 20 enables it to be bent during
insertion and removal to conform to the shape of the tube 1, without deforming the
tube itself. The assembly is inserted in the usual way, the obturator 2 providing
a tapered lead into the tracheostomy for the tube 1. Rearward movement of the obturator
2 relative to the tube 1 is prevented by engagement of the catches 31 with the lips
14. The patient can breath through the assembly during insertion because of the bore
25 through the nose, the passage between the strap 20 of the obturator 2 and the inside
of the tube, and the holes 34 in the flange 29. When the assembly has been inserted
to the correct location, the obturator 2 is removed by gripping the flange 29 and
twisting it through about 20° so that the catches 31 come out of alignment with the
lips 14 and can be pulled rearwardly along the outside of the coupling 12. After removal
of the obturator 2, the coupling 12 can be connected to a ventilation circuit or left
open, in the usual way.
[0012] The present invention makes insertion of the assembly easier because there is no
need to hold the machine end of the obturator. Also, there is no risk of the obturator
being displaced rearwardly during insertion, thereby ensuring that damage to the tissue
around the stoma is minimized. The provision of the lips on the coupling, at the machine
end of the tube do not prevent the tube being connected to conventional couplings.
It will be appreciated that the obturator could be locked with the tube against rearward
displacement by alternative surface formations on the machine end of the obturator
and tube. The invention could be used with tubes, other than tracheal tubes, where
it is necessary to prevent displacement of an obturator relative to a tube.
1. A medical tube assembly comprising a medical tube (1) and an obturator (2) inserted
within the tube, the obturator having a patient end (22) projecting from the patient
end of the tube (1) to aid insertion of the assembly, characterised in that the obturator
(2) and tube (1) are provided at their machine ends with cooperating surface formations
(30, 31, 14) arranged, when engaged, to prevent rearward displacement of the obturator
(2) relative to the tube (1).
2. A medical tube assembly according to Claim 1, characterised in that the cooperating
surface formations (30, 31, 14) are arranged such that they can be disengaged by twisting
the obturator (2) through a small angle relative to the tube (1).
3. A medical tube assembly according to Claim 1 or 2, characterised in that the cooperating
surface formations are provided by a resilient catch (30, 31) and a lip (14).
4. A medical tube assembly according to Claim 3, characterised in that the obturator
(2) has two resilient catches (30, 31) extending along opposite sides of the tube
(1) and engaging respective lips (14) on the tube.
5. A medical tube assembly according to any one of the preceding claims, characterised
in that the tube (1) has a coupling (12) at its machine end, and that the surface
formation on the obturator (2) is provided by at least one resilient catch (30, 31)
that extends along the outside of the coupling (12) and engages on a surface formation
(14) on the coupling.
6. A medical tube assembly according to any one of the preceding claims, characterised
in that the obturator (2) has a strap (20) of rectangular section extending between
its machine end and its patient end .
7. A medical tube assembly according to Claim 6, characterised in that the patient end
(22) and the machine end of the obturator (2) both have an air passage (25, 26 and
34) therethrough.
8. A medical tube assembly according to any one of the preceding claims, characterised
in that the obturator (2) is moulded from a plastics material.
9. A tracheostomy tube assembly according to any one of the preceding claims wherein
the medical tube is a tracheostomy tube (1) and the patient end (22) of the obturator
(2) is pointed, characterised in that the tube (1) and obturator (2) together provide
an air passage extending along the assembly to enable the patient to breath while
the assembly is being inserted.